CN107439657B - Duck intestine cleaning machine - Google Patents

Duck intestine cleaning machine Download PDF

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Publication number
CN107439657B
CN107439657B CN201710766542.3A CN201710766542A CN107439657B CN 107439657 B CN107439657 B CN 107439657B CN 201710766542 A CN201710766542 A CN 201710766542A CN 107439657 B CN107439657 B CN 107439657B
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China
Prior art keywords
gear
pawl
water
worm
cleaning
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CN201710766542.3A
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CN107439657A (en
Inventor
李鑫
黄河
高玉庆
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Shanxian Liuhe Feed Co., Ltd.
Shandong New Hope Liuhe Group Co Ltd
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Shanxian Liuhe Feed Co Ltd
Shandong New Hope Liuhe Group Co Ltd
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Priority to CN201710766542.3A priority Critical patent/CN107439657B/en
Publication of CN107439657A publication Critical patent/CN107439657A/en
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    • AHUMAN NECESSITIES
    • A22BUTCHERING; MEAT TREATMENT; PROCESSING POULTRY OR FISH
    • A22CPROCESSING MEAT, POULTRY, OR FISH
    • A22C17/00Other devices for processing meat or bones
    • A22C17/16Cleaning of intestines; Machines for removing fat or slime from intestines
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/90Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in food processing or handling, e.g. food conservation

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Wood Science & Technology (AREA)
  • Zoology (AREA)
  • Food Science & Technology (AREA)
  • Infusion, Injection, And Reservoir Apparatuses (AREA)
  • Cleaning By Liquid Or Steam (AREA)

Abstract

The invention discloses a duck intestine cleaning machine which comprises a cleaning barrel supported by a support, wherein the cleaning barrel is driven to rotate by a motor through a belt, a plurality of through holes are formed in the barrel body of the cleaning barrel, and water jetting mechanisms for jetting water flow into the cleaning barrel are correspondingly arranged on the outer sides of the through holes respectively. The invention has the beneficial effects that: the invention can be matched with the linkage mechanism through the motor, when the roller is cleaned, the duck intestine in the barrel is impacted by the high-pressure water flow, the water-saving cleaning machine saves more water than the traditional cleaning mode, and has better cleaning effect under the impact of the high-pressure water flow.

Description

Duck intestine cleaning machine
Technical Field
The invention relates to food preparation equipment and facilities, in particular to a duck intestine cleaning machine.
Background
The duck intestine is widely used as a food material, and is rich in protein, B vitamins, vitamin C, vitamin A, calcium, iron and other trace elements. Has good effects on the metabolism, the maintenance of nerves, heart, digestion and vision of human body. Can be eaten by general people. The duck intestine with good quality is generally milk white, has much mucus, has light peculiar smell, has toughness, does not contain excrement and dirt, tastes delicious and chewy, and is popular with many people. Therefore, various snacks using duck intestine as a raw material are available in the market.
When processing duck intestine, an important step is the acquisition of clean duck intestine raw materials. The duck intestine meeting the food requirement needs to remove peculiar smell, and is not allowed to carry excrement and dirt. Therefore, when clean duck intestines are obtained, the duck intestines taken out of the duck belly need to be washed for multiple times to be obtained. However, the existing cleaning method mainly adopts manual cleaning, and the cleaning can be completed only by repeated cleaning, so that the cleaning speed is low. The cleaning efficiency is low because the cleaning quantity of each person is small every day. Obtaining a large amount of duck intestine raw materials requires high labor costs. In addition, there are devices for cleaning duck intestines, most of which are drum-type cleaning, but the water demand is extremely large.
Disclosure of Invention
The invention provides a duck intestine cleaning machine which can be used for efficiently and saving water.
In order to achieve the purpose, the invention provides a duck intestine cleaning machine which comprises a cleaning barrel 1 supported by a support, wherein the cleaning barrel 1 is driven to rotate by a motor 2 through a belt 3, a plurality of through holes are formed in the barrel body of the cleaning barrel 1, and water jetting mechanisms 4 for jetting water flow into the cleaning barrel 1 are correspondingly arranged on the outer sides of the through holes respectively.
Preferably, the water injection mechanism 4 comprises a shell 401 with a cavity inside, one end of the shell 401 is provided with a water outlet 402, the inside is provided with a piston block 403, the side wall of the shell 401 is provided with a water inlet communicated with the inner cavity of the shell, the water inlet is provided with a water inlet pipe 420, and the water outlet 402 and the water inlet are respectively provided with a one-way door; the piston block 403 is driven by a water jet drive mechanism.
The one-way door at the water outlet 402 is communicated from the inside to the outside of the shell 401, and vice versa. The one-way door adopts the prior art and is not described in detail.
Preferably, the water jet driving mechanism includes a rack 404 disposed on one side of the piston block 403, a flat gear 405 engaged with the rack 404 is disposed on the upper side of the rack 404, the flat gear 405 is driven by a ratchet-pawl mechanism, a ratchet 406 in the ratchet-pawl mechanism is coaxial with the flat gear 405, the ratchet-pawl mechanism further includes a positioning pawl and a driving pawl 407, release mechanisms for releasing the ratchet 406 are disposed on the positioning pawl and the driving pawl 407, the positioning pawl is responsible for preventing the ratchet 406 from reversely rotating when the ratchet 406 rotates, the driving pawl 407 is responsible for stirring the ratchet 406 to rotate, a torsion spring is disposed at a connection position of the driving pawl 407 and the driving pawl 407, and a driving relationship between the torsion spring and the ratchet 406 is prior art and is not described herein. A driving pawl 407 is connected with the eccentric wheel 408, a shaft rod is eccentrically arranged on one side of the eccentric wheel 408, one end of the driving pawl 407 is hinged with the shaft rod, and the ratchet-pawl mechanism is driven to operate by the eccentric wheel 408; the side walls of the piston block 403 and the shell 401 are respectively provided with a boss, and a tension spring 409 is arranged between the two bosses.
Preferably, the release mechanism includes a cross bar 413 disposed on a side of the positioning pawl and the driving pawl 407 facing the rack 404, a vertical rod 414 is disposed on an upper side of the rack 404 corresponding to the cross bar 413, and ends of the positioning pawl and the driving pawl 407 are hinged to a fixed position thereof. When the rack 404 moves, the upright 414 approaches the cross-bar 413 of the positioning pawl and the driving pawl 407, and under the action of the upright 414, the positioning pawl and the driving pawl 407 are deflected by touching the cross-bar 413, so as to release the ratchet 406.
Preferably, the eccentric wheel 408 is coaxial with the first gear 410, the first gear 410 is meshed with a worm wheel in the worm and gear combination 411, and the worm is powered by a power mechanism to rotate.
The power mechanism can be used for independently setting a motor to drive the worm.
Preferably, the two water injection driving mechanisms are symmetrically arranged on two sides of the piston block 403, and the worm and gear combination 411 of the two water injection driving mechanisms is formed by symmetrically arranging two worm gears on two sides of the same worm and respectively engaging with the first gear 410.
Preferably, the cleaning cylinder 1 is provided with an outer gear ring 101 on the cylinder body, the outer gear ring 101 is meshed with a second gear 102, the second gear 102 is coaxial with a third gear 103, one end of a worm in the worm and gear combination 411 is provided with a crown gear 412, and the crown gear 412 is meshed with the third gear 103.
Preferably, a coil spring is arranged at the rotating shaft of the flat gear 405.
Preferably, the side covers 104 located at both ends of the washing tub 1 are provided with drain holes for draining water.
Preferably, material doors 105 are provided on the side covers 104 positioned at both ends of the washing tub 1.
Preferably, through holes corresponding to the water jetting mechanism 4 on the body of the cleaning cylinder 1 are staggered up and down.
Preferably, a plurality of ribs are arranged on the inner wall of the cleaning barrel 1 along the axial direction of the barrel body.
Preferably, a rubber pad is arranged between the piston block 403 and the housing 401.
Preferably, the water inlet pipe 420 is a hose, one end of which is connected to the housing 401, and the other end of which is connected to a water supply device, such as a water tank, etc.
The invention has the beneficial effects that: the invention can be matched with the linkage mechanism through the motor, when the roller is cleaned, the duck intestine in the barrel is impacted by the high-pressure water flow, the water-saving cleaning machine saves more water than the traditional cleaning mode, and has better cleaning effect under the impact of the high-pressure water flow.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present invention.
Fig. 2 is a partially enlarged view a of fig. 1.
Fig. 3 is a first schematic view of a water jet mechanism according to an embodiment of the invention.
Fig. 4 is a schematic view of a water jet mechanism according to an embodiment of the invention.
Wherein the reference numerals are:
1. a cleaning cylinder; 101. an outer ring gear; 102. a second gear; 103. a third gear; 104. a side cover; 105. a material gate; 2. a motor; 3. a belt; 4. a water jet mechanism; 401. a housing; 402. a water outlet; 403. a piston block; 404. a rack; 405. a flat gear; 406. a ratchet wheel; 407. a drive pawl; 408. an eccentric wheel; 409. A tension spring; 410. a first gear; 411. a worm and gear combination; 412. a crown gear; 413. a cross bar; 414. erecting a rod; 420. and (4) a water inlet pipe.
Detailed Description
In order to clearly illustrate the technical features of the present solution, the present solution is explained below by way of specific embodiments.
Example 1
Referring to fig. 1 to 4, the invention provides a duck intestine cleaning machine, which comprises a cleaning barrel 1 supported by a bracket, wherein the cleaning barrel 1 is driven to rotate by a motor 2 through a belt 3, a plurality of through holes are formed in the barrel body of the cleaning barrel 1, and water jetting mechanisms 4 for jetting water flow into the cleaning barrel 1 are correspondingly arranged on the outer sides of the through holes respectively.
The water injection mechanism 4 comprises a shell 401 with a cavity inside, one end of the shell 401 is provided with a water outlet 402, the inside is provided with a piston block 403, the side wall of the shell 401 is provided with a water inlet communicated with the internal cavity, the water inlet is provided with a water inlet pipe 420, and the water outlet 402 and the water inlet are respectively provided with a one-way door; the piston block 403 is driven by a water jet drive mechanism.
The one-way door at the water outlet 402 can be communicated from the inside to the outside of the shell 401, and vice versa. The one-way door adopts the prior art and is not described in detail.
The water jet driving mechanism comprises a rack 404 arranged on one side of a piston block 403, a flat gear 405 meshed with the rack 404 is arranged on the upper side of the rack 404, the flat gear 405 is driven by a ratchet wheel and pawl mechanism, a ratchet wheel 406 in the ratchet wheel and pawl mechanism is coaxial with the flat gear 405, the ratchet wheel and pawl mechanism further comprises a positioning pawl and a driving pawl 407, release mechanisms for releasing the ratchet wheel 406 are arranged on the positioning pawl and the driving pawl 407, the positioning pawl is used for preventing the ratchet wheel 406 from reversely rotating when the ratchet wheel 406 rotates, the driving pawl 407 is used for stirring the ratchet wheel 406 to rotate, a torsion spring is arranged at the joint of the driving pawl 407 and the driving pawl 407, and the driving relationship between the torsion spring and the ratchet wheel 406. The driving pawl 407 is connected with the eccentric wheel 408, a shaft rod is eccentrically arranged on one side of the eccentric wheel 408, one end of the driving pawl 407 is hinged with the shaft rod, and the ratchet-pawl mechanism is driven by the eccentric wheel 408 to operate; the piston block 403 and the side wall of the housing 401 are respectively provided with a boss, and a tension spring 409 is arranged between the two bosses.
The releasing mechanism comprises a cross rod 413 arranged on one side, facing the rack 404, of the positioning pawl and the driving pawl 407, a vertical rod 414 is arranged on the upper side of the rack 404 and corresponds to the cross rod 413, and the end parts of the positioning pawl and the driving pawl 407 are hinged to the fixing position of the positioning pawl and the driving pawl. When the rack 404 moves, the upright 414 approaches the cross bar 413 of the positioning pawl and the driving pawl 407, and under the action of the upright 414, the positioning pawl and the driving pawl 407 are deflected by touching the cross bar 413, so as to release the ratchet 406.
The eccentric wheel 408 is coaxial with the first gear 410, the first gear 410 is meshed with a worm wheel in the worm and gear combination 411, and the worm is powered by a power mechanism to rotate.
The power mechanism can be used for independently setting a motor to drive the worm.
Two sets of water injection driving mechanisms are symmetrically arranged on two sides of the piston block 403, and the worm wheel and worm combination 411 of the two sets of water injection driving mechanisms is formed by symmetrically arranging two worm wheels on two sides of the same worm and respectively meshed with the first gear 410 of the same worm.
An outer gear ring 101 is arranged on the body of the cleaning cylinder 1, the outer gear ring 101 is meshed with a second gear 102, the second gear 102 is coaxial with a third gear 103, a crown gear 412 is arranged at one end of a worm in a worm and gear combination 411, and the crown gear 412 is meshed with the third gear 103.
A coil spring is provided at the rotational axis of the spur gear 405.
The side covers 104 at both ends of the washing tub 1 are provided with drain holes for draining water.
The side covers 104 at both ends of the washing tub 1 are provided with material doors 105.
Through holes corresponding to the water jetting mechanism 4 on the body of the cleaning cylinder 1 are arranged in a vertically staggered manner.
A plurality of ribs are arranged on the inner wall of the cleaning barrel 1 along the axial direction of the barrel body.
A rubber pad is provided between the piston block 403 and the housing 401.
The water inlet pipe 420 is a hose, one end of which is connected to the housing 401, and the other end of which is connected to a water supply device, such as a water tank, etc.
When the device is used, duck intestines needing to be cleaned are placed into the cleaning cylinder 1, the motor is started, the motor drives the cleaning cylinder 1 to start rotating, in the rotating process, the cleaning cylinder 1 drives the second gear 102 through the outer gear ring 101 on the outer wall of the cleaning cylinder, then the worm in the worm gear and worm combination 411 is driven to rotate, the ratchet wheel 406 is driven to rotate through the worm gear and worm combination 411, the rack 404 drives the piston block 403 to move towards the rear side of the shell 401 through the flat gear 405, and in the process that the piston block 403 moves backwards, water is absorbed into the shell 401 through the water inlet pipe 420. When the vertical rod 414 on the rack 404 is abutted to the cross rod 413, the positioning pawl and the driving pawl 407 are loosened to limit the ratchet wheel 406, the piston block 403 extrudes water in the shell 401 under the action of the tension spring 409, the water is shot into the cleaning barrel 1 through the through hole on the cleaning barrel 1 through the water outlet 402, and the duck intestines in the cleaning barrel 1 are impacted in different directions through water flow with pressure, so that the better cleaning effect can be achieved by using smaller water amount. Through the adjustment of the gear in the device, the rotation period of the cleaning cylinder 1 is set to be synchronous with the ratchet wheel release period of the water injection mechanism 4, namely when the water injection mechanism 4 injects water flow, the cleaning cylinder 1 rotates, and the through hole on the cleaning cylinder is just aligned with the water outlet 402 of the water injection mechanism 4.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.

Claims (6)

1. A duck intestine cleaning machine comprises a cleaning barrel (1) supported by a support, wherein the cleaning barrel (1) is driven to rotate by a motor (2) through a belt (3), and is characterized in that a plurality of through holes are formed in the barrel body of the cleaning barrel (1), and water jetting mechanisms (4) used for jetting water flow into the cleaning barrel (1) are correspondingly arranged on the outer sides of the through holes respectively;
the water injection mechanism (4) comprises a shell (401) with a cavity inside, one end of the shell (401) is provided with a water outlet (402), the interior of the shell is provided with a piston block (403), the side wall of the shell (401) is provided with a water inlet communicated with the inner cavity of the shell, the water inlet is provided with a water inlet pipe (420), and the water outlet (402) and the water inlet are respectively provided with a one-way door; the piston block (403) is driven by a water jet drive mechanism;
the water injection driving mechanism comprises a rack (404) arranged on one side of the piston block (403), a flat gear (405) meshed with the rack (404) is arranged on the upper side of the rack (404), the flat gear (405) is driven by a ratchet-pawl mechanism, a ratchet (406) in the ratchet-pawl mechanism is coaxial with the flat gear (405), and the ratchet-pawl mechanism further comprises a positioning pawl and a driving pawl (407); the positioning pawl and the driving pawl (407) are respectively provided with a releasing mechanism for releasing the ratchet wheel (406), the driving pawl (407) is connected with the eccentric wheel (408), one side of the eccentric wheel (408) is eccentrically provided with a shaft rod, one end of the driving pawl (407) is hinged with the shaft rod, and the eccentric wheel (408) drives the ratchet wheel and pawl mechanism to operate; bosses are respectively arranged on the side walls of the piston block (403) and the shell (401), and a tension spring (409) is arranged between the two bosses;
and drain holes for draining water are arranged on the side covers (104) positioned at the two ends of the cleaning cylinder (1).
2. The duck intestine cleaning machine as claimed in claim 1, wherein the release mechanism comprises a cross bar (413) arranged on one side of the positioning pawl and the driving pawl (407) facing the rack (404), a vertical bar (414) is arranged on the upper side of the rack (404) corresponding to the cross bar (413), and the ends of the positioning pawl and the driving pawl (407) are hinged with the fixed position of the positioning pawl and the driving pawl.
3. The duck intestine cleaning machine as claimed in claim 1, wherein the eccentric wheel (408) is coaxial with the first gear (410), the first gear (410) is engaged with a worm wheel in a worm and gear combination (411), and the worm is powered by a power mechanism to rotate.
4. The duck intestine cleaning machine as claimed in claim 3, wherein the water-jet driving mechanisms are symmetrically arranged in two groups at two sides of the piston block (403), and the worm-gear and worm combination (411) of the two groups of water-jet driving mechanisms are two worm gears symmetrically arranged at two sides of the same worm and respectively meshed with the first gear (410) of the same worm.
5. The duck intestine cleaning machine as claimed in claim 3, wherein the cleaning drum (1) is provided with an external gear ring (101) on the drum body, the external gear ring (101) is engaged with a second gear (102), the second gear (102) is coaxial with a third gear (103), one end of the worm in the worm and gear combination (411) is provided with a crown gear (412), and the crown gear (412) is engaged with the third gear (103).
6. The duck intestine cleaning machine according to claim 1, wherein a coil spring is arranged at the rotation axis of the flat gear (405).
CN201710766542.3A 2017-08-30 2017-08-30 Duck intestine cleaning machine Active CN107439657B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710766542.3A CN107439657B (en) 2017-08-30 2017-08-30 Duck intestine cleaning machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710766542.3A CN107439657B (en) 2017-08-30 2017-08-30 Duck intestine cleaning machine

Publications (2)

Publication Number Publication Date
CN107439657A CN107439657A (en) 2017-12-08
CN107439657B true CN107439657B (en) 2020-05-12

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Application Number Title Priority Date Filing Date
CN201710766542.3A Active CN107439657B (en) 2017-08-30 2017-08-30 Duck intestine cleaning machine

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Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB242181A (en) * 1925-04-30 1925-11-05 Kurt Leube An improved machine for cleaning intestines
JP4116927B2 (en) * 2003-05-30 2008-07-09 太平興産株式会社 Intestinal treatment apparatus and treatment method for livestock
CN202192070U (en) * 2011-09-02 2012-04-18 楚天科技股份有限公司 Feeding device of rubber plug cleaning machine
CN202618158U (en) * 2012-06-05 2012-12-26 山东新希望六和集团有限公司 Duck gizzard cleaner
CN204949309U (en) * 2015-05-08 2016-01-13 湖南百人忆食品有限公司 Meat products belt cleaning device
CN105288969A (en) * 2015-11-11 2016-02-03 安徽省无为县奥宇体育用品有限公司 Inner drum of double-layer feather cleaning drum
CN205321060U (en) * 2015-11-18 2016-06-22 蒋继勇 Duck intestines cleaning machine
CN205266817U (en) * 2015-12-31 2016-06-01 李满 Intestines class belt cleaning device
CN105495648A (en) * 2016-02-07 2016-04-20 朱陈伟 All-directional crop washing process
CN105661581A (en) * 2016-02-07 2016-06-15 朱陈伟 Process for making dry lycium barbarum
CN106000981A (en) * 2016-05-29 2016-10-12 张玲玲 Washing method for licorice leaves

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Effective date of registration: 20200327

Address after: 266111 Airport Industrial Park, Shuangyuan Road, Liuting Street, Chengyang District, Qingdao City, Shandong Province, West Changjiang Road

Applicant after: SHANDONG NEW HOPE LIUHE GROUP Co.,Ltd.

Applicant after: Shanxian Liuhe Feed Co., Ltd.

Address before: 266111 Shandong city of Qingdao province Chengyang Jihongtan Street Green Industrial Park

Applicant before: SHANDONG NEW HOPE LIUHE GROUP Co.,Ltd.

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